“And see this ring right here, Jimmy?... That’s another time the old fellow miraculously survived some big forest fire.” ENFA/INSEA FORESTRY…..

Slides:



Advertisements
Similar presentations
INSEA Integrated Sink Enhancement Assessment Sixth Framework Programme Vladimir Stolbovoy, JRC Web:
Advertisements

Economics of GHG Management in the LULUCF sector Michael Obersteiner JRC Improving the Quality of Community GHG Inventory… rd Sept
Global biomass availability in light of policy development – iLUC Focus Petr Havlík, Michael Obersteiner, Erwin Schmid, Uwe A. Schneider AND MANY OTHER.
Modeling Future Potential of Bioenergy Jay Sterling Gregg Denmark Climate Center Systems Analysis.
Effects of Land Use Change on Forest Carbon Budgets Throughout the Southern USA from 1900 to 2050 Peter B. Woodbury Crop and Soil Sciences Department,
The water-food-energy nexus from an energy system modelling perspective Paul Dodds.
Peter Ince U.S. Forest Service Forest Products Laboratory Madison, WI.
Carbon Information Needed to Support Forest Management Bob Davis, Director Of Planning, Watershed And Air, USDA Forest Service 0.
International Model for Policy Analysis of Agricultural Commodities and Trade (IMPACT Model) IMPACT Development Team.
SRC willow and Miscanthus Two contrasting regions (SW England and E-Midlands) Existing data & generated new data to fill knowledge gaps 1. GIS-based suitability.
The LULUCF sector: land use, land-use change and forestry
IPCC Mitigation Potential and Costs Land-Use Options Daniel Martino (Carbosur, Uruguay) CLA, Chapter 8 (Agriculture), WGIII Bonn, 12 May 2007.
MINISTRY OF TOURISM, ENVIRONMENT AND NATURAL RESOURCES Forest Monitoring For REDD “A Case of The Integrated Land-use Assessment (ILUA) - Zambia” Presented.
INSEA Integrated Sink Enhancement Assessment – FP 6 Michael Obersteiner DG AGRI Bruxelles 13 th Sept
ENFA Model ENFA Kick-off Meeting Hamburg, 10 May 2005.
Petr Havlík & Michael Obersteiner + >30 collaborators International Institute for Applied Systems Analysis (IIASA), Austria International Livestock Research.
I N T E G R A T E D S I N K E N H A N C E M E N T A S S E S S M E N T INSEA PARTNERS Forest production and carbon storage -potentials of European forestry.
Current Research and Emerging Economic and Environmental Issues on Biofuels Madhu Khanna University of Illinois.
How to value ecosystem goods and services in agriculture at increasing land use pressure ? Katarina Hedlund Lund university, Sweden.
An assessment of the global land use change and food security effects of the use of agricultural residues for bioenergy production Edward Smeets, Andrzej.
Biofuels out to 2050 in North America Supply and Logistics How much biomass What types of biomass Where will it be produced How will it get to the consumer.
Trade-offs between sequestration and bioenergy benefits Nicolas VUICHARD (1,2) Philippe CIAIS (2) Luca BELELLI (3) Riccardo VALENTINI (3) (1)CIRED – Nogent.
GLOBIOM Methodology and implementation
Michael Obersteiner IIASA Regional Carbon Budgets: From methodologies to quantification. Beijing, China, November 2004 Coupling Carbon Processes.
Economics of Cellulosic Ethanol Production Marie Walsh, Burt English, Daniel de la Torre Ugarte, Kim Jensen, Richard Nelson SAEA Annual Meeting Mobile,
Fire Prevention as a GHG Mitigation Strategy Presented by Robert Beach, RTI International Brent Sohngen, The Ohio State University Presented at Forestry.
Life cycle GHG emissions of biofuels: Results from review of studies Emanuela Menichetti UNEP-DTIE, Energy Branch European Environment Agency Expert workshop.
Soil carbon in dynamic land use optimization models Uwe A. Schneider Research Unit Sustainability and Global Change Hamburg University.
European Carbon Sinks Modeling Status, Data, Analytical Gaps, EUFASOM Uwe A. Schneider Research Unit Sustainability and Global Change Hamburg University.
Econometric Estimation of The National Carbon Sequestration Supply Function Ruben N. Lubowski USDA Economic Research Service Andrew J. Plantinga Oregon.
BIOMASS CARBON ACCOUNTS FOR EUROPE AND GLOBALLY IN GLOBIOM Nicklas Forsell & Stefan Frank, Michael Obersteiner, Petr Havlík….. IIASA – International Institute.
Carbon Sequestration in Farm and Forest Ecosystems Sarah Hines April 2009
Overview of Economic Methods to Simulate Land Competition Forestry and Agriculture Greenhouse Gas Modeling Forum National Conservation Training Center.
Biofuels, Food Security and Environmental Sustainability: Global Challenges and Opportunities Daniel G. De La Torre Ugarte The Politics of Food Conference.
Organisation for Economic Co-operation and Development (OECD) 1 Introducing land use in OECD’s ENV-Linkages model Rob Dellink OECD Environment Directorate.
Implementation of the Kyoto Protocol: what does it mean for bioenergy and C sequestration? Implementation of the Kyoto Protocol: what does it mean for.
Possibilities for C / GHG mitigation in agricultural lands Pete Smith Professor of Soils & Global Change School of Biological Sciences, University of Aberdeen,
Climate Change and Energy Impacts on Water and Food Scarcity Mark W. Rosegrant Director Environment and Production Technology Division High-level Panel.
The Role of Biofuels in the Transformation of Agriculture Daniel G. De La Torre Ugarte and Chad M. Hellwinckel The Economics of Alternative Energy Sources.
“STEWARDSHIP IN FORESTRY” Forestry Projects for Terrestrial Sequestration -- Regulatory and Public Acceptance Issues -- Jim Cathcart, Ph.D. Oregon Department.
Forestry Projects: Measurement and Monitoring Werner A. Kurz Natural Resources Canada Canadian Forest Service Victoria, BC, Canada Biological Sequestration.
Can Biofuels be Sustainable in an Unsustainable Agriculture? Daniel G. De La Torre Ugarte Chad M. Hellwinckel Chad M. Hellwinckel American Chemical Society.
How to value ecosystem goods and services in agriculture at increasing land use pressure ? Katarina Hedlund Lund university, Sweden.
Impacts of Agricultural Adaptation to Climate Policies Uwe A. Schneider Research Unit Sustainability and Global Change, Hamburg University Contributors.
1 Optimal dynamic control of the forest resource with changing energy demand functions and valuation of CO2 storage Presentation at the Conference: The.
Collaborative CGIAR-ESSP Project Outline (1) "Pressures on agriculture from climate change mitigation" Motivation Ambitious climate protection goals: e.g.
Policy Scenario Analyis Chrystalyn Ivie Ramos Research Unit Sustainability and Global Change Hamburg University 23 April 2008.
Geoshare Workshop Purdue, 11 Sep 2014 What Geoshare may do for us Hermann Lotze-Campen.
1 A Global-Scale Biofuels Program and its Environmental Consequences J. Melillo 1, A. Gurgel 2, D. Kicklighter 1, J. Reilly 2, T. Cronin 1, S. Paltsev.
Suk-Won Choi (NCAR) Brent Sohngen (The Ohio State University) Steven Rose (EPRI) April 8, 2009 Forestry and Agriculture Greenhouse Gas Modeling Forum Shepherdstown,
April 8, 2009Forestry and Agriculture GHG Modeling Forum Land Use Change in Agriculture: Yield Growth as a Potential Driver Scott Malcolm USDA/ERS.
Finding CLEWs Modelling the interrelated effects of Climate, Land use, Energy, and Water (CLEW) A joint approach with FAO, IAEA, IIASA, KTH, SEI-US, and.
Land Use, Land Use Change and Forestry (LULUCF) European Commission expert group on forest fires Antalya, 26 April 2012 Ernst Schulte, DG ENV on behalf.
Land Use: Globally consistent national mitigation and adaptation Michael Obersteiner.
Agriculture Outlook 2008: Farm Bill, Wind Energy and Climate Change Climate Change and Agriculture John M. Antle Dept. of Ag Econ & Econ.
Impact of climate change on Himalayan Forest Ecosystems Prof. Ravindranath Indian Institute of Science Bangalore.
Forest Carbon Calculator Forest Carbon Reporting Initiative of USAID’s Global Climate Change Program.
Doris Hamill October 14, 2013 Doris Hamill October 14, 2013.
Tomas Lundmark SLU Sweden
Ecosystem Services and Management
Implications of Alternative Crop Yield Assumptions on Land Management, Commodity Markets, and GHG Emissions Projections Justin S. Baker, Ph.D.1 with B.A.
LESSONS FROM THE PROJECT INTEGRATED SILVOPASTORAL APPROACHES TO ECOSYSTEM MANAGEMENT José A. Gobbi Grupo GAMMA, CATIE Turrialba, Costa Rica
Biobased Economy als Motor van Duurzame Ontwikkeling.
Bioenergy Supply, Land Use, and Environmental Implications
Model Summary Fred Lauer
Biogeochemical Causes and Consequences of Land Use Change
Applying an agroecosystem model to inform integrated assessments of climate change mitigation opportunities AM Thomson, RC Izaurralde, GP Kyle, X Zhang,
EC Workshop on European Water Scenarios Brussels 30 June 2003
Presentation transcript:

“And see this ring right here, Jimmy?... That’s another time the old fellow miraculously survived some big forest fire.” ENFA/INSEA FORESTRY…..

Global ForAg Model FASOM Regional Farm Type Model AROPAj Farm Model EFEM-DNDC Stand level Model PICUS Regional Forest Model EURO - FOR Model for GHG Response to Management EPIC Common Database and Standards Common Database and Data Structure Harmonized System Boundaries IPCC GPG and /or FGA Accounting Consistent Baseline Assumptions Joint Catalogue of GHG Mitigation Measures Uniform Validation Criteria Agreed Sustainability Constraints Common IT Standards Standard Scenario Assumptions and Story Lines Joint Vision INTEGRATED POLICY FRAMEWORK All Partners

Basic Modeling Processing Markets Feed Mixing Other Resources Grazing Labor Pasture Land Natl. Inputs Forestland Water Livestock Production Crop Production Export Domestic Demand Import Biofuel/GHG Demand Forest Production Cropland

Global ForAg Model FASOM Regional Farm Type Model AROPAj Farm Model EFEM-DNDC Stand level Model PICUS Regional Forest Model EURO - FOR Model for GHG Response to Management EPIC Common Database and Standards Common Database and Data Structure Harmonized System Boundaries IPCC GPG and /or FGA Accounting Consistent Baseline Assumptions Joint Catalogue of GHG Mitigation Measures Uniform Validation Criteria Agreed Sustainability Constraints Common IT Standards Standard Scenario Assumptions and Story Lines Joint Vision INTEGRATED POLICY FRAMEWORK All Partners

PICUS 2.0

Global ForAg Model FASOM Regional Farm Type Model AROPAj Farm Model EFEM-DNDC Stand level Model PICUS Regional Forest Model OSCAR Model for GHG Response to Management EPIC Common Database and Standards Common Database and Data Structure Harmonized System Boundaries IPCC GPG and /or FGA Accounting Consistent Baseline Assumptions Joint Catalogue of GHG Mitigation Measures Uniform Validation Criteria Agreed Sustainability Constraints Common IT Standards Standard Scenario Assumptions and Story Lines Joint Vision INTEGRATED POLICY FRAMEWORK All Partners

OSCAR links Link to FASOM Dynamic PE of ForAg OSCAR Forest Production Tree Growth Mortality Effects of management -thinning Data Issues Region or Grid DIMA Economic Downscaling

Forestry modeling framework Supply: W4E Wood4ForInd C storage (soil, biomass) LUC Alternatives: C storage Wood Energy management: (harvest, thinning, species) potential NPP Initial state forest and soil climate FASOM model -economic optimization of land use OSKAR model -forestry scenarios NPP model management costs

OSCAR model output for a grid cell areasize (m 2 ) BiomassManagement scenario and predicted production (wood, carbon storage, energy) 1A1A1 B1B1 m1 p1m2 p3m3 p3m4 p4... 1A1A1 B2B The HRU is divided in biomass classes depending on the initial state of the forest in terms of biomass and species Each area of similar biomass and species is modeled as a single forest stand A number of management scenarios is simulated for each forest area and class

Density and stand development Thinning changes the density initially but also the development with time After thinning the density approaches full density (self-thinning limit) growth thinning self-thinning biomass soil carbon mortality decomposition CO 2 density

Forest growth Potential NPP controls growth rate and equilibrium biomass

Example: Management Scenario 20% 70% 0%

Biomass Chain – Methanol (Populus et al.)  Biomass Gasification Plants of variable size  Geographically explicit supply  Engineering cost calculations  In cooperation with LTU, BoKu

Example with 5 biofuel plants Cars Fuel (MW) Bio (ODT/yea r) E

Cost in €/GJ MEOH

Cost in € / l MEOH

OSCAR links Link to FASOM Dynamic PE of ForAg OSCAR Forest Production Tree Growth Mortality Effects of management -thinning Data Issues Region or Grid DIMA Economic Downscaling

DIMA_Global  Down-scaling Model  Exogenous Prices Outputs (B4E, Timber, Carbon) Inputs (Land, Labor, Capital/Technology)

Land Use Change until 2100 for B1 Intensity map: (affected) ha x C-uptake Existing forest Afforestation Deforestation

Spatial Distribution of GDP  Important inputs to the spatially explicit forestry and regional agricultural model  Necessary information for vulnerability, adaptation and impact assessment

Bioenergy Supply for A2 (Price < 6$/GJ)

Outlook  First Data Supplied to FASOM  Constant Check of Species Calibration  Resource data appraisal and downscaling  Go Global with FASOM4WOOD  More Chains (FT Diesel, DME, H2, CCS…)  Disturbances & Implement rules from Stochastic calculus.